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Understanding Viscosity-Structure Relationship of Slags and Its Influence on Metallurgical Processes

机译:了解炉渣的粘度结构关系及其对冶金过程的影响

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The viscosity is one of the most critical properties of slags and thus its influence on the physicochemical phenomena in metallurgical processes has been issued for last decades. The viscosity of ferrous- and non-ferrous metallurgical slags can be understood via structural investigation with spectroscopic methodologies including x-ray photoelectron spectroscopy, infrared- and Raman spectroscopy, and solid state nuclear magnetic resonance spectroscopy, etc. Therefore, the reaction kinetics such as desulfurization in ladle metallurgical furnace, reduction of FeO and MnO in electric arc furnace is strongly dependent on the viscosity of the slags. The rates of oxide (inclusion and refractory) dissolution into the slags and fluxes are governed by the viscosity. Alternatively, the structure of aluminosilicate melts also affects the thermochemical properties such as sulfide capacity, etc. These diverse applications of the viscosity-structure relationship to ferrous- and non-ferrous metallurgical processes were reviewed.
机译:粘度是炉渣最关键的特性之一,因此其对冶金过程中的物理化学现象的影响已在去年发布。可以通过用X射线光电子能谱,红外和拉曼光谱和固态核磁共振光谱等的光谱方法来理解铁料和有色金属冶金渣的粘度可以通过结构调查。因此,反应动力学如钢包冶金炉中的脱硫,电弧炉中的FeO和MnO的减少强烈依赖于炉渣的粘度。氧化物(包含和难治性)溶解到炉渣和助熔剂的速率由粘度控制。或者,硅铝酸盐熔融的结构也影响了硫化物容量等热化学性质等。综述了粘度结构与铁和有色金属冶金工艺的这些不同应用。

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